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High-quality Ceramic Robot End Effector Designed for Industrial Automation Applications

High-quality Ceramic Robot End Effector Designed for Industrial Automation Applications

Merknaam: ZMSH
Modelnummer: Keramische eindeffector
MOQ: 1 stks
Verpakking: Aanpasbaar
Betalingsvoorwaarden: T/T
Gedetailleerde informatie
Plaats van herkomst:
China
Certificering:
Rohs
Materiaal:
SiC en Al2O3 keramiek
Chemische zuiverheid:
99.99995%
Hardheid:
2500 Vickers hardheid
Sublimatietemperatuur:
2700°C
Levering vermogen:
Bij het geval
Verwarmingscapaciteit:
640 J·kg-1 ·K-1
Markeren:

ceramic robot end effector

,

industrial automation ceramic parts

,

ceramic end effector with warranty

Productbeschrijving

High-quality Ceramic Robot End Effector Designed for Industrial Automation Applications

 

Description of Ceramic End Effector:

Ceramic end effector for chip disk drive of semiconductor equipment, precision ceramic parts have good structural strength, high temperature resistance, high pressure resistance, good precision, good parallelism, dense and uniform organization, high strength. It has been used by semiconductor production factory for many years. Fountyl has a group of excellent engineers with unique and excellent skills in ceramic alien processing projects. alien processing technology is our company's strength.

The ceramic end effector with high functional, high temperature durability, high wear resistance is used for a long time in a high temperature environment without causing damage, and the wear of the material to be moved is also reduced to a minimum, effectively controlling the diffusion of impure substances to the moved body, and the surface can also be processed according to customer requirements with special dimensions and high functional characteristics.

High-quality Ceramic Robot End Effector Designed for Industrial Automation Applications 0


Features of Ceramic End Effectors:

Wear resistance: Ceramic end effector have excellent wear resistance and can maintain a stable surface state for a long time.

 

Corrosion resistance: Ceramic end effector can work in corrosive media and maintain stable performance.

 

High temperature resistance: The ceramic end effector can work in a high temperature environment and is not easy to deform or melt, ensuring the stability of the process.

 

High precision: The ceramic end effector has excellent dimensional stability and precision, enabling high precision operation.

 

Lightweight: Compared to metal arms, ceramic end effector usually have a lower weight, reducing the load on the mechanical device.

 

Generally speaking, alumina end effector play an important role in modern industry, and their excellent performance ensures the efficient and stable operation of automated processes.

 

Types of End Effectors:

End effectors come in a huge variety of shapes, sizes, and capabilities.

The most common types are:

Grippers: Grippers are designed to grasp and manipulate objects. They can have multiple fingers for delicate grasping or simple parallel plates for picking up boxes and other regularly shaped items. Vacuum grippers use suction to grab smooth, non-porous surfaces.

Clamps: Clamps are similar to grippers but are typically used to firmly and securely hold an object in place. Pneumatic clamps are often used in industrial automation.

Tools: End effectors can also come in the form of popular tools like screwdrivers, welders, or spray painters.

Sensors: Some end effectors incorporate sensors to provide feedback to the robot. For example, a gripper may have tactile sensors to determine how firmly it’s grabbing onto an object. Force-torque sensors can measure the forces and torques applied during manipulation.

The specific end effector used depends entirely on the application you need them for. A robot that’s designed for delicate electronics assembly will need a very different end effector than one used to move heavy pallets in a warehouse.

 

Application of Ceramic End Effector:

Semiconductor manufacturing: Ceramic end effector play an important role in the semiconductor manufacturing process and are often used to handle high-value materials such as silicon wafers to ensure the accuracy and stability of the process.

 

Machining industry: In processes requiring high precision machining, ceramic end effector can be used as tools to ensure product accuracy and surface quality.

 

Medical devices: Ceramic end effector are widely used in surgical robots and other medical devices, and their high accuracy and biocompatibility make them an ideal choice.

 

Chemical industry: Due to its excellent corrosion resistance, alumina end effector are also widely used in the chemical industry, especially in the environment with corrosive media.


ZMSH Ceramic Product Recommendations:


High-quality Ceramic Robot End Effector Designed for Industrial Automation Applications 1

 

Q&A:

Q: What is an end effector?

A: An end effector is a peripheral device that attaches to a robot's wrist, allowing the robot to interact with its task. Most end effectors are mechanical or electromechanical and serve as grippers, process tools, or sensors.

 

Q: What are the three types of end effectors?

A: End-effectors generally fall into three main categories: grippers, process tools, and sensors. The choice between them depends heavily on the application. Pick-and-place tasks usually require a type of gripper, while process tools are used in tasks like welding or painting.

 

Q: What is the difference between an actuator and an effector?

A: Actuator: Actuators move and control a system. Essentially, they convert energy into motion. Examples of actuators include gears and electric motors. Effector: Effectors are the parts through which action takes place in the environment.